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Analytical methods in predicting excess pore water pressure in front of slurry shield in saturated sandy ground

机译:饱和砂土中泥浆盾构前方超孔隙水压力预测的分析方法

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During mechanized tunnelling with a slurry shield in saturated sand, excess pore water pressures will generate in front of slurry shield. These excess pore water pressures can influence the stability of the tunnel face. The magnitude of the excess pore water pressures thus becomes of importance for the stability of the tunnel face. In this paper, two theories solutions are presented to describe the development and decline of the excess pore water pressures in front of slurry shield in saturated sandy ground. The first theory considers transient flow in a semi confined aquifer with elastic storage, while the second one assumes different conditions of unconfined steady-state flow governed by the penetration of slurry into the soil in front of the tunnel face. Both methods are tested at different positions around the tunnel, during both drilling and standstill and compared with measurements performed at the Green Hart Tunnel and North/South line in the Netherlands. It is shown that both analytical theories can predict the excess pore water pressures in front of slurry shield. The second one seems more appropriate because it reflects the effect of slurry penetration. Furthermore, the measurements seem to indicate that the influence of elastic storage is not so big as assumed in the first theory.
机译:在饱和砂土中使用泥浆防护罩进行机械隧道掘进的过程中,泥浆防护罩前会产生多余的孔隙水压力。这些多余的孔隙水压力会影响隧道面的稳定性。因此,多余的孔隙水压力的大小对于隧道面的稳定性至关重要。本文提出了两种理论解决方案来描述饱和砂土中泥浆盾构前方超孔隙水压力的发展和下降。第一种理论考虑了具有弹性储存的半密闭含水层中的瞬态流动,而第二种理论则假定了由泥浆渗透到隧道面前的土壤所控制的无限制稳态流的不同条件。两种方法都在钻孔和静止期间在隧道周围的不同位置进行了测试,并与在荷兰的Green Hart隧道和北/南线进行的测量进行了比较。结果表明,两种分析理论都可以预测泥浆护罩前的超孔隙水压力。第二个似乎更合适,因为它反映了浆液渗透的影响。此外,这些测量似乎表明弹性存储的影响并不像第一个理论所假设的那么大。

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